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首页> 外文期刊>American Journal of Botany >Molecular phylogenetics of the species-rich neotropical genus Swartzia (Leguminosae, Papilionoideae) and related genera of the swartzioid clade1
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Molecular phylogenetics of the species-rich neotropical genus Swartzia (Leguminosae, Papilionoideae) and related genera of the swartzioid clade1

机译:物种丰富的新热带Swartzia(Leguminosae,Papilionoideae)及其swartzioid进化枝的相关属的分子系统发育

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摘要

Swartzia (ca. 180 spp.) is a characteristic and diverse element of neotropical rainforest tree communities. As such, it has been identified as a focal group in studies of evolutionary diversification and community assembly in rainforests. However, progress is impeded by the lack of a phylogenetic hypothesis for the genus and its close relatives, which together constitute the descendents of one of the first branches of the papilionoid phylogeny. Here we present a molecular phylogenetic study with extensive sampling of species of Swartzia and with complete sampling of genera of the "swartzioid" clade. The results, based on analysis of chloroplast (atpB–rbcL, trnL intron, and trnL–F) and nuclear (AAT1 and ITS) DNA sequences, add substantially to our understanding of relationships within this diverse group and call for taxonomic changes, particularly within Swartzia. The monophyly of a redefined Swartzia is weakly to moderately supported. Within Swartzia, the analyses identify 11 nonoverlapping subclades, few of which correspond exactly to previously published taxa. The analyses support the recent segregations of Bobgunnia from Swartzia and of Trischidium from Bocoa, as well as the resurrection of the monospecific genus Fairchildia. The analyses identify a "core swartzioid" clade comprising the remainder of Swartzia, Bocoa, and Candolleodendron.
机译:Swartzia(约180 spp。)是新热带雨林树木群落的特征和多样化元素。因此,它已被确定为热带雨林进化多样化和社区聚集研究的焦点小组。但是,由于缺乏属及其近亲的系统发育假说而阻碍了进展,这两个假说共同构成了乳突类系统发育的第一个分支之一的后代。在这里,我们介绍了一个分子系统发育研究,其中包括对Swartzia物种的大量采样以及对“ swartzioid”进化枝属的完整采样。基于叶绿体(atpB–rbcL,trnL内含子和trnL–F)和核(AAT1和ITS)DNA序列分析的结果,大大增加了我们对这一不同群体之间关系的理解,并呼吁分类学变化,特别是在内部Swartzia。重新定义的Swartzia的单面性弱到中度受支持。在Swartzia中,分析确定了11个不重叠的子小节,其中很少几个子节与以前发布的分类单元完全对应。这些分析支持了最近来自Swartzia的Bobgunnia和来自Bocoa的Trischidium的隔离,以及单特异性Fairchildia属的复活。这些分析确定了一个“核心swartzioid”进化枝,其中包括了其他的Swartzia,Bocoa和Candolleodendron。

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